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Enhancer modularity and the evolution of new traits

机译:增强器模块化和新特性的演变

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摘要

Animals have modular cis-regulatory regions in their genomes, and expression of a single gene is often regulated by multiple enhancers residing in such a region. In the laboratory, and also in natural populations, loss of an enhancer can result in a loss of gene expression. Although only a few examples have been well characterized to date, some studies have suggested that an evolutionary gain of a new enhancer function can establish a new gene expression domain. Our recent study showed that Drosophila guttifera has more enhancers and additional expression domains of the wingless gene during the pupal stage, compared to D. melanogaster, and that these new features appear to have evolved in the ancestral lineage leading to D. guttifera.(1) Gain of a new expression domain of a developmental regulatory gene (toolkit gene), such as wingless, can cause co-option of the expression of its downstream genes to the new domain, resulting in duplication of a preexisting structure at this new body position. Recently, with the advancement of evodevo studies, we have learned that the developmental regulatory systems are strikingly similar across various animal taxa, in spite of the great diversity of the animals' morphology. Even behind "new" traits, cooptions of essential developmental genes from known systems are very common. We previously provided concrete evidence of gains of enhancer activities of a developmental regulatory gene underlying gains of new traits.(1) Broad occurrence of this scenario is testable and should be validated in the future.
机译:动物在其基因组中具有模块化的顺式调控区,并且单个基因的表达通常由位于该区域的多个增强子调控。在实验室中,以及在自然种群中,增强子的缺失都可能导致基因表达的缺失。尽管迄今为止只有几个例子得到了很好的表征,但是一些研究表明,新增强子功能的进化获得可以建立新的基因表达域。我们最近的研究表明,与黑腹果蝇相比,果蝇果蝇在the期具有更多的增强子和无翼基因的其他表达结构域,并且这些新特征似乎在导致古蒂蝇的祖传世系中进化了。(1发育调节基因(工具箱基因)的新表达域(如无翅)的获得会导致其下游基因表达向新域的共存选择,从而导致在这个新的身体部位复制先前存在的结构。最近,随着evodevo研究的发展,我们已经了解到,尽管动物形态各异,但各种动物类群的发育调控系统却极为相似。甚至在“新”特征背后,来自已知系统的必需发育基因的共选也是非常普遍的。我们先前提供了新的性状获得基础的发育调控基因增强子活性增强的具体证据。(1)这种情况的广泛发生是可检验的,应在以后进行验证。

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